Loudspeaker capable of accommodating microphone

By setting a storage compartment and magnetic attachment on the outer wall of the speaker body, the microphone can be automatically stored, which solves the problem of inconvenience in the existing technology that requires flipping the lid to retrieve the microphone, and improves the ease of operation and protection.

WO2026031040A1PCT designated stage Publication Date: 2026-02-12JIANGXI TAIDE INTELLIGENCE TECHNOLOGY CO LTD
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Patent Information

Application Number
PCT/CN2024/110610
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-08-08
Publication Date
2026-02-12

AI Technical Summary

Technical Problem

The existing speaker requires flipping the lid to access the microphone, which is inconvenient.

Method used

A storage compartment connected to the outside is set on the outer wall of the speaker body. The storage compartment includes a microphone outlet and a microphone collection slot. The microphone sinks into the microphone collection slot through the microphone outlet and uses magnetic attachment to achieve automatic microphone storage.

Benefits of technology

The microphone can be retrieved directly without flipping the lid, improving ease of operation and reducing the probability of impact damage during microphone storage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of loudspeakers. Disclosed is a loudspeaker capable of accommodating a microphone. The loudspeaker comprises a loudspeaker body and a microphone, an outer wall of the loudspeaker body being provided with an accommodating compartment leading to the outside. The accommodating compartment comprises a microphone receiving port and a microphone accommodating recess, the microphone accommodating recess being communicated with the microphone receiving port. The center line of the microphone receiving port in an opening direction intersects the extension line of the microphone accommodating recess in a recess channel direction, such that after being put in the microphone receiving port, the microphone sinks to the microphone accommodating recess. A first magnetic attraction member is provided in the accommodating compartment, and a second magnetic attraction member is provided on the microphone, the microphone being arranged in the accommodating compartment by means of attraction between the first magnetic attraction member and the second magnetic attraction member. In the present invention, when not in use, the microphone is held to pass through the microphone receiving port, and then released from a hand to sink to the microphone accommodating recess under the action of gravity, thereby solving the problem in the prior art that it is inconvenient to retrieve microphones.
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Description

A sound box capable of accommodating a microphone TECHNICAL FIELD

[0001] The present application relates to the technical field of sound boxes, in particular to a sound box capable of accommodating a microphone. BACKGROUND

[0002] A sound box is an electronic device that can convert audio signals into sound. In recent years, it has been widely used by people. With the continuous progress of electronic technology, the use range of audio and video equipment is becoming more and more extensive, and it has occupied an important position in people's daily life. The sound box is an important part of audio and video equipment, and the sound box usually includes a microphone for receiving sound and a sound box for playing sound.

[0003] The sound box of the prior art usually includes a sound box body and a box cover. The sound box body is internally provided with a storage mechanism for accommodating a microphone. The box cover is rotationally connected to the sound box body and is used to open and close the sound box body. When the microphone needs to be taken out, the box cover must be turned over first, and then the microphone in the storage mechanism can be taken out. Therefore, it is very inconvenient. Therefore, the prior art needs to be improved to solve the problem that the microphone needs to be turned over to be taken out, which is inconvenient.

[0004] SUMMARY

[0005] The present application provides a sound box capable of accommodating a microphone to solve the problems in the prior art.

[0006] To achieve the above-mentioned purpose, the technical scheme adopted by the present application is as follows:

[0007] A sound box capable of accommodating a microphone, comprising a sound box body and a microphone, wherein an outer wall of the sound box body is provided with a storage bin communicating with the outside; the storage bin comprises a microphone placing opening and a microphone collecting groove, and the microphone collecting groove communicates with the microphone placing opening; the center line of the microphone placing opening in the opening direction intersects with the extension line of the microphone collecting groove in the groove direction, so that the microphone sinks into the microphone collecting groove after being placed in the microphone placing opening; a first magnetic attraction piece is arranged in the storage bin, and a second magnetic attraction piece is arranged on the microphone, and the microphone is arranged in the storage bin by the attraction between the first magnetic attraction piece and the second magnetic attraction piece.

[0008] Compared with the prior art, the present application has the following beneficial effects:

[0009] The present invention provides a speaker enclosure for storing microphones, comprising a speaker body with a storage compartment on its outer wall communicating with the outside. The storage compartment includes a microphone inlet and a microphone receiving slot, the microphone receiving slot communicating with the microphone inlet. The center line of the microphone inlet in the opening direction intersects with the extension line of the microphone receiving slot in the channel direction, so that the microphone sinks into the microphone receiving slot after being placed in the microphone inlet. The microphone inlet of this invention communicates with the outside, and the microphone receiving slot communicates with the microphone inlet. When the microphone needs to be retrieved, it can be directly retrieved without flipping the cover, solving the problem of inconvenience in retrieving the microphone. When not in use, the microphone is held through the microphone inlet and then released; the microphone sinks into the microphone receiving slot under gravity, solving the problem of the prior art requiring flipping the cover to retrieve the microphone, which is inconvenient. Attached Figure Description

[0010] Figure 1 is a schematic diagram of the structure of the speaker box with a retractable microphone in Embodiment 1;

[0011] Figure 2 is a schematic diagram of the combined structure of the wheat harvesting trough and the wheat dispensing opening in Embodiment 1;

[0012] Figure 3 is a schematic diagram of the structure of the wheat outlet in Example 1;

[0013] Figure 4 is a schematic diagram of the combined structure of the microphone and the second magnetic component in Embodiment 1;

[0014] Figure 5 is a structural schematic diagram of a speaker provided in Embodiment 2;

[0015] Figure 6 is a cross-sectional view of a speaker provided in Embodiment 2;

[0016] Figure 7 is a partially enlarged view of part A of a speaker provided in Embodiment 2 of Figure 6;

[0017] Figure 8 is a cross-sectional view of a speaker provided in another embodiment of Example 2;

[0018] Figure 9 is a partially enlarged view of part B of a speaker provided in another embodiment of Figure 8;

[0019] Figure 10 is a schematic diagram of an overall structure of the microphone storage and charging structure and speaker provided in Embodiment 3;

[0020] Figure 11 is a schematic diagram of another overall structure of the microphone storage and charging structure and speaker provided in Embodiment 3;

[0021] Figure 12 is a partial structural schematic diagram of the microphone storage and charging structure provided in Embodiment 3;

[0022] Figure 13 is a cross-sectional view of a partial structure of the microphone storage and charging structure provided in Embodiment 3;

[0023] Figure 14 is a partial structural diagram of the microphone storage and charging structure provided in Embodiment 3;

[0024] Fig. 15 is a sectional view of another partial structure of the microphone storage and charging structure according to Embodiment 3;

[0025] Fig. 16 is a structural schematic view of a flip cover of the microphone storage and charging structure according to Embodiment 3;

[0026] Fig. 17 is a structural schematic view according to Embodiment 4;

[0027] Fig. 18 is another structural schematic view according to Embodiment 4;

[0028] Fig. 19 is a schematic view of a communication port according to Embodiment 4;

[0029] Fig. 20 is another structural schematic view according to Embodiment 4;

[0030] Fig. 21 is still another structural schematic view according to Embodiment 4;

[0031] Fig. 22 is a structural schematic view according to one of the structures according to Embodiment 4;

[0032] Fig. 23 is a structural schematic view according to another of the structures according to Embodiment 4;

[0033] Fig. 24 is a structural schematic view of a microphone independent storage type sound box according to Embodiment 5;

[0034] Fig. 25 is a structural schematic view of a microphone according to Embodiment 5;

[0035] Fig. 26 is a structural schematic view showing a first locking member according to Embodiment 5;

[0036] Fig. 27 is a structural schematic view showing a second locking member according to Embodiment 5;

[0037] Fig. 28 is a structural schematic view of a combination of a first magnetic attraction member, a second magnetic attraction member, a baffle, and a limiting slot according to Embodiment 5;

[0038] Fig. 29 is another structural schematic view of a combination of a first magnetic attraction member, a second magnetic attraction member, a baffle, and a limiting slot according to Embodiment 5.

[0039] Reference Signs:

[0040] 1, sound box body; 11, box cover; 12, button; 13, button groove; 14, positioning groove; 15, first magnetic attraction piece; 120, groove; 2, microphone; 21, storage bin; 22, flip cover; 23, fixing piece; 24, abutting piece; 25, display screen; 26, display screen storage groove; 27, hanging hand; 28, sound box handle; 200, first limiting piece; 210, first inclined surface; 211, buckle groove; 212, opening; 213, baffle; 214, limiting groove; 215, buckle hand part; 216, communication port; 220, second inclined surface; 221, rotating shaft; 222, buckle; 223, flip cover handle; 224, second flexible piece; 225, locking assembly; 230, elastic piece; 231, second fixing piece; 232, first fixing piece; 240, limiting boss; 250, transition surface; 260, rod body structure; 270, first flexible piece; 3, second magnetic attraction piece; 30, charging assembly; 31, first charging piece; 32, second charging piece; 33, charging sheet; 34, notch; 300, spring sheet; 4, buckle hand groove; 5, microphone placing port; 50, storage space; 51, first opening; 52, second opening; 53, third opening; 511, center line; 6, microphone storage groove; 60, power supply contact; 61, middle groove; 62, first microphone clamping groove; 63, second microphone clamping groove; 64, limiting groove hole; 65, through groove; 611, extension line; 7, first locking piece; 8, charging contact sheet; 9, second locking piece. DETAILED DESCRIPTION

[0041] The present application will be further described and illustrated in conjunction with the drawings and specific embodiments. The technical features of each embodiment of the present application can be combined accordingly without conflict.

[0042] To make the above-mentioned objectives, features and advantages of the present application more apparent and easy to understand, the specific embodiments of the present application will be described in detail below in conjunction with the drawings. In the following description, many specific details are set forth in order to provide a thorough understanding of the present application. However, the present application can be practiced in many different ways from those described herein without departing from the scope of the present application, and those skilled in the art can make similar improvements without departing from the concept of the present application, so the present application is not limited to the specific embodiments disclosed below. The technical features of each embodiment of the present application can be combined accordingly without conflict.

[0043] In the description of the present application, it should be understood that when an element is considered to be "connected" to another element, it can be directly connected to the other element or indirectly connected to the other element with an intermediate element. In contrast, when an element is referred to as being "directly" connected to another element, there is no intermediate element.

[0044] In the description of the present application, it needs to be understood that the terms "first", "second" are only used for distinguishing purposes of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with "first", "second" can be explicitly or implicitly included at least one of the features.

[0045] Embodiment 1

[0046] The embodiment provides a microphone-storable sound box. The microphone-storable sound box comprises a sound box body 1 and a microphone 2, an external wall of the sound box body 1 is provided with a storage bin 21 which is communicated with the outside, and the microphone 2 is placed in the storage bin 21.

[0047] Please refer to FIG. 1-4, the microphone-storable sound box of the present application comprises a sound box body 1, an external wall of the sound box body 1 is provided with a storage bin 21 which is communicated with the outside, the storage bin 21 comprises a microphone placing opening 5 and a microphone storage groove 6, and the microphone storage groove 6 is communicated with the microphone placing opening 5; the center line 511 of the microphone placing opening 5 in the opening direction intersects with the extension line 611 of the microphone storage groove 6 in the groove direction, so that the microphone 2 can sink to the microphone storage groove 6 after being placed in the microphone placing opening 5.

[0048] It needs to be noted that, since the storage bin 21 is arranged on the external wall of the sound box body 1, the microphone 2 can be directly taken out through the microphone placing opening 5 when needed, and when not in use, the microphone 2 can be placed into the microphone placing opening 5 by holding the microphone 2, and the microphone 2 can sink to the microphone storage groove 6 under the action of gravity. Compared with the flip cover sound box in the prior art, the present application does not need to flip the cover when taking out the microphone 2, and the problem of inconvenience in taking out the microphone 2 is solved.

[0049] Further, the external wall of the sound box body 1 at least comprises the side wall of the left side, the side wall of the right side and the side wall of the back side of the sound box body 1, and the front end surface of the sound box body 1 is provided with a loudspeaker, so the microphone placing opening 5 is generally not arranged.

[0050] Of course, if the front end surface of the sound box body 1 is large enough, the microphone placing opening 5 and the microphone storage groove 6 can be arranged after the loudspeaker is arranged to accommodate the microphone 2.

[0051] Further, the external wall of the sound box body 1 further comprises the upper end surface of the sound box, and at this time, if the microphone 2 is to be sunk under the action of gravity, the microphone storage groove 6 needs to be arranged as an inclined downward groove, so that the microphone 2 can sink to the groove bottom of the microphone storage groove 6 along the inclined downward groove of the microphone storage groove 6 after being placed.

[0052] In another embodiment, the microphone placing opening 5 comprises a first opening 51, and a second opening 52 and a third opening 53 are respectively arranged on the two sides of the first opening 51, and the first opening 51, the second opening 52 and the third opening 53 are all communicated with the microphone storage groove 6.

[0053] The first opening 51 is adapted to the microphone 2 to enable the microphone 2 to enter the microphone receiving groove 6 from the first opening 51. Generally, the first opening 51 is slightly larger than the microphone 2, so that the microphone 2 can smoothly enter the microphone receiving groove 6 from the first opening 51.

[0054] The second opening 52 and the third opening 53 have the function of avoiding space. When the user needs to place the microphone 2, the user's hand can also partially extend into the microphone receiving groove 6 through the second opening 52 or the third opening 53, so as to reduce the distance between the microphone 2 and the bottom of the microphone receiving groove 6 when the user releases the microphone 2. The smaller the distance between the microphone 2 and the bottom of the microphone receiving groove 6 when the user releases the microphone 2, the smaller the impact of the microphone 2 sinking into the microphone receiving groove 6, which greatly protects the microphone 2 and reduces the probability of impact damage when the microphone 2 is stored.

[0055] Generally, the shape of the second opening 52 and the third opening 53 is adapted to the hand, including arc shape, circular shape, square shape and other shapes that can enable the user to extend the hand into the microphone receiving groove 6.

[0056] In another embodiment, the microphone receiving groove 6 includes a middle groove 61, the middle groove 61 extends to both ends of the speaker body 1 to form a microphone clamping mechanism, and the middle groove 61 is connected to the first opening 51.

[0057] The microphone clamping mechanism includes a first microphone clamping groove 62 and a second microphone clamping groove 63, the bottom of the first microphone clamping groove 62 and the bottom of the second microphone clamping groove 63 are arc-shaped, the middle groove 61 extends to the lower end surface of the speaker body 1 to form the first microphone clamping groove 62, and the middle groove 61 extends to the upper end surface of the speaker body 1 to form the second microphone clamping groove 63.

[0058] Compared with the microphone clamping mechanism of the prior art which is not arc-shaped, the microphone clamping mechanism has better limiting effect. The middle groove 61 has a transition effect, which is the area first contacted by the microphone 2 after being placed in the microphone receiving groove 6. If the lower end surface of the speaker body 1 is in contact with the ground, the microphone 2 sinks into the first microphone clamping groove 62 under the action of gravity; if the upper end surface is in contact with the ground, the microphone 2 sinks into the second microphone clamping groove 63 under the action of gravity, thereby achieving convenient storage of the microphone 2.

[0059] The middle groove 61 and the first microphone clamping groove 62 combine to form a storage groove larger than a single microphone 2, so that if the left side or the right side of the speaker body 1 is in contact with the ground, the user has a larger storage groove to place the microphone 2. If the size of the storage groove is set to be slightly larger than two microphones 2, two microphones 2 can be stored at the same time.

[0060] In addition, the middle groove 61 can also be recessed towards the speaker body 1 to form a clamping groove (not shown in the figure). If the left side or the right side of the speaker body 1 is in contact with the ground, the user places the microphone 2, and at this time the microphone 2 directly partially sinks into the clamping groove, thereby fastening the microphone 2.

[0061] Specifically, the sound box comprises a limiting assembly connected to the sound box body 1 or arranged in the microphone clamping mechanism, and the limiting assembly is used for limiting the microphone 2 in the microphone clamping mechanism.

[0062] Specifically, the limiting assembly comprises a first magnetic attraction member (not shown in the figure), which is arranged in the microphone clamping mechanism and connected to the wall of the storage bin 21. When the microphone 2 sinks into the microphone clamping mechanism, the first magnetic attraction member and the microphone 2 are attracted to each other. The first magnetic attraction member is arranged in the first microphone clamping groove or the second microphone clamping groove. It should be noted that the microphone 2 of the present application is internally provided with an iron block. When the microphone 2 sinks into the microphone clamping mechanism, the first magnetic attraction member and the iron block are attracted to each other. The number of the first magnetic attraction member is not limited in the present application. The number of the first magnetic attraction member can be one or more. When multiple first magnetic attraction members are arranged, in order to enhance the limiting effect, the multiple first magnetic attraction members can be distributed at intervals to avoid the microphone 2 from being separated from the microphone clamping mechanism.

[0063] Specifically, as shown in FIG. 4, in order to further enhance the limiting effect on the microphone 2, a second magnetic attraction member 3 can also be arranged on the microphone 2. When the microphone 2 sinks into the microphone clamping mechanism, the first magnetic attraction member is directly opposite the second magnetic attraction member 3, and the first magnetic attraction member and the second magnetic attraction member 3 are attracted to each other.

[0064] Specifically, in another embodiment, the limiting assembly comprises a baffle arranged at the opening of the storage bin 21 and connected to the sound box body 1.

[0065] The microphone 2 of the present application is stored in the microphone storage groove 6, and the baffle is arranged at the opening of the storage bin 21 and connected to the sound box body 1, which plays an intercepting role on the microphone 2 arranged in the microphone storage groove 6.

[0066] Specifically, in order to avoid the baffle from being separated from the sound box body 1, the baffle and the sound box body 1 are integrally formed. Of course, it should be noted that in actual application, the baffle and the sound box body 1 can also be fixedly connected. In order to facilitate cleaning of the microphone storage groove 6, the sound box body 1 and the baffle can also be detachably connected. The detachable connection mode can be buckle connection, bolt connection, etc. The present application does not limit this.

[0067] Specifically, the microphone 2 is provided with a hand holding groove 4, and when the microphone 2 is limited in the microphone clamping mechanism, the hand holding groove 4 is communicated with the second opening 52 or the third opening 53.

[0068] If the lower end surface of the sound box body 1 is in contact with the ground, the user's hand passes through the second opening 52 and extends into the hand holding groove 4, driving the microphone 2 to move towards the middle groove 61. When the microphone 2 is completely moved to the middle groove 61, the microphone 2 is driven to move towards the microphone placing opening 5, and the microphone 2 can be taken out. In some embodiments, the bottom of the sound box body 1 can also be provided with a roller assembly, which facilitates people to push the sound box body 1 more labor-saving.

[0069] If the upper end surface of the sound box body 1 is in contact with the ground, the user's hand passes through the third opening 53 and extends into the hand holding groove 4, driving the microphone 2 to move towards the middle groove 61. When the microphone 2 is completely moved to the middle groove 61, the microphone 2 is driven to move towards the microphone placing opening 5, and the microphone 2 can be taken out. Of course, it should be noted that in actual application, the hand grip can also be replaced by the hand holding groove 4, and the present application does not limit this.

[0070] Specifically, the sound box capable of accommodating the microphone further comprises a buffer pad arranged on the inner wall of the microphone clamping mechanism. When the microphone 2 sinks to the microphone clamping mechanism after entering the middle groove 61 from the microphone placing opening 5, the buffer pad can reduce the impact of the sinking of the microphone 2 on the microphone clamping mechanism, thereby protecting the microphone 2 and the microphone clamping mechanism.

[0071] Embodiment 2

[0072] The structure of the sound box capable of accommodating the microphone according to the embodiments of the present application will be described below with reference to FIGS. 5 to 9.

[0073] According to the sound box of the embodiments of the present application, the sound box comprises a shell 100 and a first limiting piece 200. The outer wall of the shell 100 is provided with a groove 120 and a first opening 51, and the first opening 51 is arranged in communication with the groove 120. The side wall of the groove 120 is provided with a first microphone clamping groove 62 and a second microphone clamping groove 63 arranged in a recessed manner away from the groove 120. The first microphone clamping groove 62 and the second microphone clamping groove 63 are arranged in a manner that a middle groove 61 is formed therebetween and in communication with the groove 120, the first microphone clamping groove 62 and the second microphone clamping groove 63. The first microphone clamping groove 62 and the second microphone clamping groove 63 are used to accommodate the microphone. The first limiting piece 200 is elastic. The first limiting piece 200 is arranged on the inner wall of the first microphone clamping groove 62 and the second microphone clamping groove 63 and located at the middle groove 61. The first limiting piece 200 is used to abut against the microphone 2 in the first microphone clamping groove 62 and the second microphone clamping groove 63 to limit the position of the microphone. In some embodiments, the first microphone clamping groove 62 and the second microphone clamping groove 63 constitute a microphone clamping mechanism. A first magnetic attraction piece can be arranged in the first microphone clamping groove 62 or the second microphone clamping groove 63. A second magnetic attraction piece is arranged on the microphone 2, and the first magnetic attraction piece and the second magnetic attraction piece of the microphone are used to realize attraction.

[0074] In the implementation of the present application, the user can put the microphone 2 into the groove 120 from the first opening 51. The first microphone clamping groove 62 and the second microphone clamping groove 63 are arranged on the side wall of the groove 120, and the middle groove 61 is connected with the groove 120, the first microphone clamping groove 62 and the second microphone clamping groove 63, so that the user can put the microphone in the groove 120 into the first microphone clamping groove 62 and the second microphone clamping groove 63 from the middle groove 61. The microphone is accommodated in the first microphone clamping groove 62 and the second microphone clamping groove 63. Since the groove 120 is arranged on the outer side wall of the shell 100, the user can put and take out the microphone on the outer side of the shell 100, which makes the process of putting in and taking out the microphone more convenient and easy to use. Moreover, since the first microphone clamping groove 62 and the second microphone clamping groove 63 are arranged on the inner wall of the groove 120 and are recessed away from the groove 120, the interference of the microphone from external factors can be reduced, and the microphone in the first microphone clamping groove 62 and the second microphone clamping groove 63 can be protected. The first limiting piece 200 is arranged at the middle groove 61. Since the first limiting piece 200 is elastic, when the microphone needs to be put into the first microphone clamping groove 62 and the second microphone clamping groove 63 and taken out from the microphone, the microphone will abut against the first limiting piece 200 and press the first limiting piece 200 to deform. After the microphone is put into the first microphone clamping groove 62 and the second microphone clamping groove 63, the first limiting piece 200 can abut against the microphone in the first microphone clamping groove 62 and the second microphone clamping groove 63 to limit the position of the microphone in the first microphone clamping groove 62 and the second microphone clamping groove 63, so as to avoid the possibility that the microphone in the first microphone clamping groove 62 and the second microphone clamping groove 63 accidentally falls from the middle groove 61 to the groove 120 or outside the groove 120.

[0075] Specifically, the first limiting piece 200 can be made of silica gel or other elastic materials.

[0076] Specifically, other sound-producing components and electronic components of the sound box can be placed in the shell 100.

[0077] Specifically, the microphone is cylindrical, and the circumferential surface of the microphone abuts against the first inclined surface 210 and the inner wall of the first microphone clamping groove 62 and the second microphone clamping groove 63, respectively. The side wall of the first microphone clamping groove 62 and the second microphone clamping groove 63 away from the middle groove 61 is provided with a rounded structure between the top wall and the bottom wall, so as to adapt to the cylindrical microphone.

[0078] Referring to FIGS. 7 and 9, it can be understood that the side of the first limiting piece 200 facing the first microphone clamping groove 62 and the second microphone clamping groove 63 is provided with a first inclined surface 210, which is used to abut against the microphone in the first microphone clamping groove 62 and the second microphone clamping groove 63.

[0079] By setting the first inclined surface 210 to abut the microphone in the first microphone clamping groove 62 and the second microphone clamping groove 63, the area that the first limiting piece 200 can abut the microphone can be increased, so that the damage caused by the collision between the first limiting piece 200 and the microphone can be reduced, and the stability of the first limiting piece 200 in limiting the position of the microphone in the first microphone clamping groove 62 and the second microphone clamping groove 63 can be improved.

[0080] Specifically, the first limiting piece 200 is arranged on the bottom wall of the first microphone clamping groove 62 and the second microphone clamping groove 63, and the first inclined surface 210 is arranged in an upwardly inclined direction; the microphone is cylindrical, and the peripheral side surface of the microphone abuts the first inclined surface 210 and the inner wall surface of the first microphone clamping groove 62 and the second microphone clamping groove 63, respectively; and the inclination angle of the first inclined surface 210 can be set according to specific actual needs.

[0081] Referring to FIGS. 7 and 9, it can be understood that the side of the first limiting piece 200 facing the groove 120 is provided with a second inclined surface 220.

[0082] After the user places the microphone into the groove 120 from the first opening 51, and then presses the microphone into the first microphone clamping groove 62 and the second microphone clamping groove 63 from the middle groove 61, the side of the first limiting piece 200 facing the groove 120 is provided with a second inclined surface 220, so that when the microphone in the groove 120 passes through the middle groove 61, it will first abut the second inclined surface 220, and the second inclined surface 220 plays a guiding role, so that the microphone can pass through the middle groove 61 along the second inclined surface 220, so as to reduce the difficulty of the microphone entering the first microphone clamping groove 62 and the second microphone clamping groove 63 from the groove 120, and the area that the first limiting piece 200 can abut the microphone can be increased by setting the second inclined surface 220, so as to reduce the damage caused by the collision between the first limiting piece 200 and the microphone; the inclination angle of the second inclined surface 220 can be set according to specific actual needs.

[0083] Specifically, the first limiting piece 200 is arranged on the bottom wall of the first microphone clamping groove 62 and the second microphone clamping groove 63, and the second inclined surface 220 is arranged in an upwardly inclined direction; the microphone is cylindrical, and the peripheral side surface of the microphone abuts the first inclined surface 210 and the inner wall surface of the first microphone clamping groove 62 and the second microphone clamping groove 63, respectively; and the second inclined surface 220 is symmetrically arranged with the first inclined surface 210.

[0084] Specifically, the first limiting piece 200 is arranged on the bottom wall of the first microphone clamping groove 62 and the second microphone clamping groove 63, and the second inclined surface 220 is arranged in an upwardly inclined direction; the microphone is cylindrical, and the peripheral side surface of the microphone abuts the first inclined surface 210 and the inner wall surface of the first microphone clamping groove 62 and the second microphone clamping groove 63, respectively; and the second inclined surface 220 is symmetrically arranged with the first inclined surface 210.

[0085] Referring to FIGS. 6 and 7, it can be understood that the elastic member 230 is further included, and two ends of the elastic member 230 are respectively connected with the inner wall of the first and second microphone clamping grooves 62 and 63 and the first limiting member 200.

[0086] The first limiting member 200 is arranged on the inner wall of the first and second microphone clamping grooves 62 and 63 through the elastic member 230, and the first limiting member 200 is arranged at the middle groove 61. Since the first limiting member 200 is elastic, when the microphone needs to be put into or taken out of the first and second microphone clamping grooves 62 and 63, the microphone will press the first limiting member 200 and compress the elastic member 230, so that the elastic member 230 is in a compressed state. By arranging the elastic member 230, the stability of the first limiting member 200 in limiting the position of the microphone can be improved. Specifically, after the microphone enters the first and second microphone clamping grooves 62 and 63, the microphone abuts against the first limiting member 200 and compresses the elastic member 230. The elastic member 230 continuously pushes the first limiting member 200 to abut against the microphone, so as to control the position of the microphone. By continuously pushing the first limiting member 200, the microphone abuts against the inner wall of the first and second microphone clamping grooves 62 and 63, so as to further limit the position of the microphone, thereby reducing the damage of the inner wall of the first and second microphone clamping grooves 62 and 63 to the microphone when the shell 100 is in a moving state.

[0087] Specifically, the elastic member 230 can be a spring. One end of the elastic member 230 is connected with the bottom wall of the first and second microphone clamping grooves 62 and 63, and the other end of the elastic member 230 is connected with the bottom end of the first limiting member 200. Of course, according to specific conditions, one end of the elastic member 230 can be connected with the top wall of the first and second microphone clamping grooves 62 and 63, and the other end of the elastic member 230 can be connected with the top end of the first limiting member 200.

[0088] Referring to FIGS. 6 and 7, it can be understood that the inner wall of the first and second microphone clamping grooves 62 and 63 is provided with a limiting slot hole 64 and a mounting hole, and the limiting slot hole 64 is arranged in communication with the mounting hole. The first limiting member 200 is movably arranged at the mounting hole, and two ends of the elastic member 230 are respectively connected with the first limiting member 200 and the inner wall of the limiting slot hole 64.

[0089] By arranging the limiting slot hole 64, the elastic member 230 can be accommodated, so as to protect the elastic member 230. By arranging the mounting hole, the position of the first limiting member 200 can be limited.

[0090] Specifically, the first limiting piece 200 is provided with a limiting boss 240 on the circumferential side, the limiting boss 240 can abut against the top wall of the limiting slot hole 64, so as to limit the position of the limiting boss 240, thereby avoiding the possibility that the first limiting piece 200 falls out of the mounting hole into the first card slot 62 and the second card slot 63, the upper end of the first limiting piece 200 is located in the first card slot 62 and the second card slot 63, and the elastic piece 230 is always in a compressed state, so that the elastic piece 230 can continuously push the first limiting piece 200 to move towards the direction away from the limiting slot hole 64, so that the first limiting piece 200 can continuously abut against the microphone in the first card slot 62 and the second card slot 63, wherein the elastic piece 230 can be a spring, and the first limiting piece 200 is provided with a rod structure 260 at the bottom end, the spring is arranged around the rod structure 260, and the two ends of the spring abut against the bottom end of the first limiting piece 200 and the bottom wall of the limiting slot hole 64 respectively.

[0091] Referring to FIGS. 5, 6 and 8, it can be understood that the first limiting piece 200 is provided with a plurality of and is arranged at intervals.

[0092] By providing a plurality of first limiting pieces 200, the position of the microphone in the first card slot 62 and the second card slot 63 can be limited, and the possibility that the microphone in the first card slot 62 and the second card slot 63 accidentally falls from the middle slot 61 to the recess 120 or outside the recess 120 can be further reduced.

[0093] Specifically, a plurality of first limiting pieces 200 are arranged at the middle slot 61, and the plurality of first limiting pieces 200 can be arranged on the bottom wall, the side wall and / or the bottom wall of the first card slot 62 and the second card slot 63 respectively, and adjacent first limiting pieces 200 can be arranged at intervals.

[0094] Referring to FIGS. 7 and 9, it can be understood that the first card slot 62 and the second card slot 63 are provided with a plurality of, and the first limiting piece 200 is correspondingly provided with a plurality of.

[0095] A plurality of first card slots 62 and second card slots 63 can be arranged on different side walls of the recess 120, so as to form a plurality of middle slots 61, and a plurality of first limiting pieces 200 are arranged at the plurality of middle slots 61, so as to enable the shell 100 to accommodate a plurality of microphones.

[0096] Specifically, the first card slot 62 and the second card slot 63 are arranged on two opposite side walls of the recess 120 respectively, so as to form a middle slot 61, and the first limiting piece 200 is arranged at the middle slot 61, and after the microphone is placed into the recess 120 from the first opening 51, the microphone in the recess 120 can be pressed into the first card slot 62 and the second card slot 63.

[0097] Referring to FIGS. 8 and 9, it can be understood that in another embodiment of the present application, the sound box further comprises a spring 300; the inner wall of the first microphone clamping groove 62 and the second microphone clamping groove 63 is provided with a through groove 65, and the spring 300 is arranged at the through groove 65, one end of the spring 300 is connected with the shell 100, and the limiting piece is arranged at the other end of the spring 300.

[0098] The spring 300 is elastic, when the microphone needs to be put into the first microphone clamping groove 62 and the second microphone clamping groove 63 and taken out from the microphone, the microphone will abut against the first limiting piece 200 and push the first limiting piece 200 outwardly of the first microphone clamping groove 62 and the second microphone clamping groove 63, because the first limiting piece 200 is arranged on one end of the spring 300, so that the spring 300 can be elastically deformed, the position of the first limiting piece 200 can be limited by arranging the spring 300, and the elastic piece 230 can continuously push the first limiting piece 200 to abut against the microphone, so that the position of the microphone can be controlled, and the first limiting piece 200 is continuously pushed to make the microphone abut against the inner wall of the first microphone clamping groove 62 and the second microphone clamping groove 63, so that the position of the microphone can be further limited, thereby reducing the damage of the inner wall of the first microphone clamping groove 62 and the second microphone clamping groove 63 to the microphone when the shell 100 is in a moving state; specifically, the first limiting piece 200 is arranged at the middle groove 61, so that the first limiting piece 200 will occupy part of the space of the middle groove 61, when some microphones with large volume need to be accommodated, it is difficult to push the microphone in the recess 120 from the middle groove 61 into the first microphone clamping groove 62 and the second microphone clamping groove 63, by arranging the spring 300, when the microphone is pushed into the first microphone clamping groove 62 and the second microphone clamping groove 63, the microphone abuts against the first limiting piece 200 and presses the first limiting piece 200, so that the spring 300 deforms to move the first limiting piece 200 into the through groove 65, thereby reducing the difficulty of putting in and taking out the microphone.

[0099] Referring to FIG. 5, it can be understood that the shell 100 is provided with a third opening 150, and the third opening 150 is arranged in communication with the first opening 51 and the first microphone clamping groove 62 and the second microphone clamping groove 63.

[0100] The user can operate the microphone in the first microphone clamping groove 62 and the second microphone clamping groove 63 from the third opening 150, so as to reduce the difficulty of putting in and taking out the microphone; specifically, the third opening 150 and the first opening 51 are both arranged on the same end surface of the shell 100.

[0101] It can be understood that the second limiting piece is further included, the second limiting piece is arranged on the inner wall of the first microphone clamping groove 62 and the second microphone clamping groove 63 and located on the side of the middle groove 61 away from the recess 120, and the second limiting piece is used for abutting against the microphone in the first microphone clamping groove 62 and the second microphone clamping groove 63.

[0102] By setting the second limiting piece to cooperate with the first limiting piece 200 to limit the position of the microphone in the first microphone slot 62 and the second microphone slot 63, the damage to the microphone caused by the collision between the microphone and the inner wall of the first microphone slot 62 and the second microphone slot 63 can be reduced.

[0103] Specifically, the side of the second limiting piece has a bevel structure for abutting against the microphone. The second limiting piece abuts against the microphone through the bevel structure, which can increase the area of the second limiting piece that can abut against the microphone, so as to reduce the damage to the second limiting piece caused by the collision between the second limiting piece and the microphone, and improve the stability of the second limiting piece in limiting the position of the microphone in the first microphone slot 62 and the second microphone slot 63. The structure and size of the second limiting piece are the same as those of the first limiting piece 200, so as to reduce the difficulty of production and manufacturing of the second limiting piece, and the second limiting piece and the first limiting piece 200 can be replaced with each other, so that the first limiting piece 200 can be installed at the place where the second limiting piece is needed to be installed.

[0104] Embodiment 3

[0105] As shown in FIGS. 10 and 11, the sound box structure provided by the embodiment of the present application can accommodate a microphone, which comprises at least one microphone 2 and a sound box body 1. A charging assembly 30 for charging the microphone 2 is arranged between the microphone 2 and the sound box body 1.

[0106] In the embodiment, the sound box body 1 is provided with a storage bin 21, and a microphone storage slot 6 for storing the microphone 2 is arranged in the storage bin 21. A flip cover 22 is connected to a microphone discharging opening 5 of the storage bin 21. A first flexible piece 270 is arranged on the side of the flip cover 22 facing the microphone 2. When the flip cover 22 closes the storage bin 21, the first flexible piece 270 abuts against the microphone 2. A fixing piece 23 for fixing the microphone 2 is arranged in the storage bin 21. When the microphone 2 is fixed in the microphone storage slot 6 by the fixing piece 23, the charging assembly 30 can charge the microphone 2.

[0107] Specifically, the sound box body 1 of the embodiment has a front portion, a rear portion, a top portion, a bottom portion, a left portion and a right portion, and the storage compartment 21 is arranged at any position of the front portion, the rear portion, the top portion, the left portion and the right portion of the sound box body 1. The embodiment only illustrates the structure in which the storage compartment 21 is arranged at the rear portion of the sound box body 1, and the structure of the storage compartment 21 arranged at the front portion, the top portion, the left portion and the right portion is not illustrated. The storage compartment 21 of the embodiment can be integrally formed with the plate of the upper surface of the sound box body 1, and the integral formation of the storage compartment 21 can effectively reduce the mounting process of the sound box body 1 and reduce the cost expenditure. Of course, the storage compartment 21 of the embodiment can also be formed separately with the plate of the upper surface of the sound box body 1, and when one of the plates is damaged, the damaged plate can be conveniently replaced.

[0108] The microphone storage and charging structure provided by the embodiment of the application can fix the microphone 2 on the microphone storage groove 6 through the fixing member 23 when the user puts the microphone 2 into the storage compartment 21, can charge the microphone 2 through the charging assembly 30 after the microphone 2 is fixed on the microphone storage groove 6 through the fixing member 23, and can abut against the microphone 2 through the first flexible member 270 when the cover 22 closes the storage compartment 21, so as to realize double fixing of the microphone 2 and avoid the problem of insufficient fixing of the microphone 2.

[0109] It should be noted that the microphone 2 of the embodiment can be placed horizontally in the storage compartment 21 or vertically in the storage compartment 21, and the embodiment is not limited in a specific manner.

[0110] In the embodiment, the fixing member 23 is a first fixing member 232 and a second fixing member 231 arranged in the storage compartment 21, and the microphone 2 can be clamped and fixed through the first fixing member 232 and the second fixing member 231 when the microphone 2 is put into the storage compartment 21. Further, the first fixing member 232 and the second fixing member 231 are made of rubber or silica gel. The first fixing member 232 and the second fixing member 231 made of rubber or silica gel can avoid clamping and damaging the microphone when the microphone is fixed.

[0111] Specifically, the first fixing member 232 and the second fixing member 231 are arranged at intervals. Since the first fixing member 232 and the second fixing member 231 are arranged at intervals, the user can conveniently hold the middle portion of the microphone 2 downward to adjust the abutting pressure between the microphone 2 and the charging assembly 30 and ensure stable contact, and the user's hand can completely extend into the first fixing member 232 and the second fixing member 231 to hold the microphone 2.

[0112] Of course, in other embodiments of the present application, the fixing member 23 is a first magnetic member 15 arranged on the inner wall of the storage compartment 21, and the side wall of the microphone 2 is correspondingly provided with a second magnetic member 3 (not shown in the figure) that is mutually attracted to the first magnetic member 15. When the microphone 2 is placed into the storage compartment 21, the first magnetic member 15 and the second magnetic member 3 are mutually attracted, thereby achieving the fixation of the microphone 2.

[0113] In the present embodiment, the flip cover 22 is made of flexible material, specifically rubber or silicone. The flip cover 22 is provided with the first flexible member 270 on the side facing the microphone 2. When the microphone 2 is fixed in the collecting groove 6 by the first fixing member 232 and the second fixing member 231, the first flexible member 270 abuts and presses the microphone 2 to achieve further fixation and storage of the microphone 2.

[0114] In other embodiments of the present application, the flip cover 22 is made of hard material, specifically plastic or stainless steel. The flip cover 22 is provided with the first flexible member 270 on the side facing the microphone 2. When the microphone 2 is fixed in the collecting groove 6 by the first fixing member 232 and the second fixing member 231, the first flexible member 270 abuts and presses the microphone 2 to achieve further fixation and storage of the microphone 2.

[0115] It should be noted that the first flexible member 270 in the present embodiment can be a whole flexible member arranged on the back of the flip cover 22, or a flexible rib arranged on the back of the flip cover 22. The present application does not make specific limitations, and can be set according to the actual production process. The flexible member and the flexible rib are both on the side facing the microphone 2. When the flip cover 22 closes the discharging opening 5 of the storage compartment 21, the flexible member or the flexible rib can abut and press the microphone 2, thereby achieving further fixation and storage of the microphone 2.

[0116] As shown in FIG. 12 and FIG. 13, in one embodiment of the present application, the receiving bin 21 is further provided with an abutting piece 24, the microphone 2 is fixed in the receiving bin 21 by the fixing piece 23, and the microphone 2 abuts on the top of the abutting piece 24. By providing the abutting piece 24, when the microphone 2 is fixed in the receiving bin 21 by the fixing piece 23, the microphone 2 abuts on the abutting piece 24, and the abutting piece 24 can effectively prevent the microphone 2 from being damaged by the impact of the receiving trough 6 on the microphone 2.

[0117] In the embodiment, the charging assembly 30 comprises a first charging piece 31 and a second charging piece 32, the first charging piece 31 is arranged in the receiving bin 21 and penetrates through the abutting piece 24, and the second charging piece 32 is arranged on the bottom surface of the microphone 2; the microphone 2 is fixed in the receiving bin 21 by the fixing piece 23, and the second charging piece 32 is electrically connected with the first charging piece 31 to charge the microphone 2.

[0118] In the embodiment, the first charging piece 31 is a charging probe, and the second charging piece 32 is a charging ring. When the microphone 2 is fixed in the receiving bin 21 by the fixing piece 23 and abuts on the abutting piece 24, the first charging piece 31 is electrically connected with the second charging piece 32, thereby charging the microphone 2.

[0119] As shown in FIG. 14 and FIG. 15, in another embodiment of the present application, the charging assembly 30 comprises a first charging piece 31 and a second charging piece 32, the lower outer surface of the microphone 2 is provided with a slot, the first charging piece 31 is arranged in the slot, and the second charging piece 32 is arranged in the fixing piece 23; the fixing piece 23 is clamped in the slot, and the second charging piece 32 is electrically connected with the first charging piece 31 to charge the microphone 2.

[0120] Specifically, in the embodiment, the first charging piece 31 is a charging ring, and the second charging piece 32 is a charging probe. When the microphone 2 is fixed in the receiving bin 21 by the fixing piece 23, the slot on the lower side of the microphone 2 is clamped in the fixing piece 23, and at this time, the first charging piece 31 in the slot is electrically connected with the second charging piece 32 in the fixing piece 23, thereby charging the microphone 2.

[0121] Further, the fixing member includes a first fixing member 232 and a second fixing member 231, the second charging member is arranged in the second fixing member 231, the notch on the lower side of the microphone 2 is clamped into the second fixing member 231, at this time, the first charging member 31 in the notch is electrically connected with the second charging member 32 in the second fixing member 231, thereby realizing charging of the microphone 2.

[0122] In other embodiments of the present application, the lower side outer surface of the microphone 2 is provided with a first charging member 31, the storage compartment 21 is provided with a locking member, the locking member is provided with a second charging member 32 electrically connected with the first charging member 31. Specifically, the first charging member 31 of the present embodiment is a charging ring, and the second charging member 32 is a charging probe. When the microphone 2 is inserted into the first fixing member 232 and the second fixing member 231, the microphone 2 is rotated so that the lower part of the microphone 2 is clamped into the locking member, at this time, the second charging member 32 in the locking member is electrically connected with the first charging member 31, thereby realizing charging of the microphone 2.

[0123] As shown in FIGS. 10, 11 and 16, in one embodiment of the present application, the flip cover 22 is provided with a rotating shaft 221, the rotating shaft 221 penetrates through the flip cover 22 and is rotationally connected with the sound box body 1.

[0124] The flip cover 22 is provided with a buckle 222 and a flip cover handle 223 on the side away from the rotating shaft 221, and the side wall of the storage compartment 21 is provided with a buckle groove 211 matched with the buckle 222. The buckle 222 and the buckle groove 211 are clamped to realize fixation of the flip cover 22, avoiding loosening of the flip cover 22 after the flip cover 22 covers the storage compartment 21.

[0125] The flip cover 22 in the present embodiment is opened and closed by cooperation of the buckle 222 and the buckle groove 211, that is, when the flip cover 22 is closed, the buckle 222 is inserted into the buckle groove 211; when the flip cover 22 needs to be opened, the buckle 222 can be taken out of the buckle groove 211 by slightly exerting force, thereby opening the flip cover 22. The present embodiment is provided with the flip cover handle 223, which facilitates the user to open or close the flip cover 22 through the flip cover handle 223. When the flip cover 22 needs to be opened or closed, the user pulls the flip cover 22 at the flip cover handle 223, at this time, the flip cover 22 rotates along the rotating shaft 221, and the buckle 222 is taken out of or clamped into the buckle groove 211, so that the flip cover 22 is opened or closed at the microphone placing opening 5 of the storage compartment 21, thereby facilitating the user to fix or take out the microphone 2 from the storage compartment 21.

[0126] In one embodiment of the present application, the rotating shaft 221 is installed on the lower side of the cover 22 and connected with the lower side of the speaker body 1, and the buckle 222 and the cover handle 223 are correspondingly arranged on the upper side of the cover 22. A user pulls the cover 22 at the cover handle 223, and the cover 22 rotates horizontally along the rotating shaft 221 to close or open the microphone outlet 5 of the storage compartment 21, thereby facilitating the user to fix or take out the microphone 2 in the storage compartment 21.

[0127] In other embodiments of the present application, the rotating shaft 221 can be installed on the left side or the right side of the cover 22, and the rotating shaft 221 is correspondingly connected with the left side or the right side of the speaker body 1. The buckle 222 and the cover handle 223 are correspondingly arranged on the right side or the left side of the cover 22. A user pulls the cover 22 at the cover handle 223, and the cover 22 rotates vertically along the rotating shaft 221 to close or open the microphone outlet 5 of the storage compartment 21, thereby facilitating the user to fix or take out the microphone 2 in the storage compartment 21.

[0128] Of course, in other embodiments of the present application, the cover 22 is arranged separately from the speaker body 1. Specifically, the cover 22 is arranged close to one side of the speaker body 1 and provided with a first magnetic member 15, and the speaker body 1 is provided with a second magnetic member 3 corresponding to the position of the first magnetic member 15. The first magnetic member 15 is attracted to each other to realize the connection of the cover 22 and the speaker body 1. When a user needs to fix or take out the microphone 2 in the storage compartment 21, the user pulls the cover 22 at the cover handle 223. At this time, the first magnetic member 15 is separated from the second magnetic member 3 to realize the disconnection of the cover 22 from the speaker body 1, so that the user can fix or take out the microphone 2 in the storage compartment 21.

[0129] As shown in FIG. 11 and FIG. 16, in one embodiment of the present application, the cover 22 and the side wall of the storage compartment 21 are provided with a second flexible member 224, and the cover 22 is connected with the side wall of the storage compartment 21 by interference through the second flexible member 224. Specifically, the second flexible member 224 is arranged on the outer surface of the cover 22. When the cover 22 covers the microphone outlet 5 of the storage compartment 21, the second flexible member 224 realizes the interference connection with the side wall of the storage compartment 21, thereby realizing the sealed connection of the cover 22 and the speaker body 1.

[0130] Of course, in another embodiment of the present application, the second flexible piece 224 is arranged on the side wall of the storage bin 21, and when the cover 22 covers the opening 5 of the storage bin 21, the second flexible piece 224 is connected with the side wall of the storage bin 21 in an interference fit, thereby achieving a sealed connection between the cover 22 and the speaker body 1.

[0131] In addition, in another embodiment of the present application, the width of the cover 22 is greater than the width of the opening 5 of the storage bin 21, and the cover 22 is made of a flexible material. When the cover 22 covers the opening 5 of the storage bin 21, the cover 22 is deformed and covers the opening 5 of the storage bin 21 and is connected with the side wall of the storage bin 21 in an interference fit, thereby achieving a sealed connection between the cover 22 and the speaker body 1.

[0132] In the present embodiment, the cover 22 is further provided with a locking assembly 225 for fixing the cover 22 with the speaker body 1. By providing the locking assembly 225, the cover 22 can be tightly connected with the speaker body 1, avoiding the loosening of the cover 22 after being fixed with the speaker body 1.

[0133] As shown in FIGS. 10 and 11, in an embodiment of the present application, the speaker body 1 is connected with a display screen 25, and the top of the speaker body 1 is provided with a display screen receiving groove 26 capable of accommodating the display screen 25, and the display screen 25 is movably accommodated in the display screen receiving groove 26. Specifically, the display screen 25 is movably connected with the speaker body 1 through a rotating shaft 221, a hinge support and a universal ball. In the present embodiment, the display screen 25 can be rotated and arranged in the display screen receiving groove 26, or can be rotated out of the display screen receiving groove 26 for use. Of course, in another embodiment of the present application, the speaker body 1 can be movably connected with the display screen 25 through magnetic separation.

[0134] In an embodiment of the present application, the speaker body 1 is provided with a hanging hand 27 and a speaker handle 28 on both sides of the side surface. By providing the hanging hand 27 and the speaker handle 28, the hanging hand 27 can be connected with a shoulder strap, thereby facilitating the carrying of the speaker body 1 to achieve the movement of the speaker body 1. The user can also move the speaker body 1 through the speaker handle 28.

[0135] In other embodiments of the present application, the sound box body 1 side is further provided with a sound box handle 28 arranged on the flip cover 22. In the present embodiment, the storage compartment 21 and the flip cover 22 are arranged on the side of the sound box body 1, and the sound box handle 28 is correspondingly arranged on the flip cover 22. The sound box handle 28 can serve as both a handle of the sound box and a handle of the flip cover 22. The flip cover 22 can be opened by the sound box handle 28, and the sound box body 1 can be moved by the sound box handle 28. The sound box handle 28 and the flip cover handle 223 are integrated, thereby reducing the production work. The flip cover 22 is tightly connected to the sound box body 1 by the locking assembly 225, thereby avoiding the loosening of the flip cover 22 after the flip cover 22 and the sound box body 1 are locked.

[0136] In the embodiments of the present application, the microphone 2 is provided with a button 12, and a button groove 13 for accommodating the button 12 is arranged on the microphone 2. The height of the button 12 is less than the depth of the button groove 13, and the button 12 is arranged in the button groove 13. In the present embodiment, the microphone 2 can be placed in the storage compartment 21 in a normal direction or upside down. When the microphone 2 is placed in the storage compartment 21 in the normal direction or upside down, the button 12 is not directed to the first flexible member 270, thereby effectively avoiding the problem that the first flexible member 270 further fixes the microphone 2 when the flip cover 22 closes the storage compartment 21, and the microphone 2 is pressed to cause the microphone 2 to be incorrectly turned on, thereby causing high power consumption, howling and other problems.

[0137] The embodiments of the present application also provide a sound box comprising the microphone storage and charging structure according to any one of the above embodiments. Since the sound box comprises all the technical solutions of the above embodiments, it has all the beneficial effects of the microphone storage and charging structure according to all the above embodiments, which will not be described here.

[0138] In summary, the microphone storage and charging structure and the sound box provided by the embodiments of the present application have the following advantages. When the user puts the microphone 2 into the storage compartment 21, the fixing member 23 can fix the microphone 2 on the microphone groove 6. After the microphone 2 is fixed on the microphone groove 6 by the fixing member 23, the charging assembly 30 can charge the microphone 2. When the flip cover 22 closes the storage compartment 21, the first flexible member 270 can abut against the microphone 2, thereby achieving double fixation of the microphone 2 and avoiding the problem of insufficient fixation of the microphone 2.

[0139] Embodiment 4

[0140] The sound box structure capable of accommodating the microphone of the present application further comprises a box cover 11 movably connected to the sound box body 1, wherein the box cover 11 can be provided with a display screen, the sound box body 1 is provided with an accommodation bin 21 for accommodating the microphone 2, the opening 212 of the accommodation bin 21 is communicated with the outside, the accommodation bin 21 is arranged on the outer wall of the sound box body 1, and the opening 212 is arranged outside the overlapping area of the sound box body 1 after the box cover 11 is closed, so that the microphone 2 can be taken out from the accommodation bin 21 when the box cover 11 is opened or closed.

[0141] It should be noted that the opening 212 of the accommodation bin 21 for accommodating the microphone 2 of the present application is arranged outside the overlapping area of the sound box body 1 after the box cover 11 is closed, the microphone 2 is arranged separately from the box cover 11, and there is no cross relationship between the two. No matter whether the box cover 11 is in an open or closed state, the user can directly take out the microphone 2 through the opening 212 of the accommodation bin 21 without opening the box cover 11, thereby solving the technical problem that the box cover 11 must be first opened when the microphone 2 needs to be taken out in the prior art, which is very inconvenient.

[0142] In one embodiment,

[0143] Please refer to FIGS. 17, 18 and 21, the accommodation bin 21 further comprises a microphone placing opening 5, the extension line 611 of the opening 212 in the channel direction of the accommodation bin 21 intersects the center line 511 of the microphone placing opening 5, the opening 212 and the microphone placing opening 5 are communicated, and are separately arranged on two faces of the sound box body 1.

[0144] It should be noted that when the microphone 2 is accommodated in the accommodation bin 21 and the microphone head of the microphone 2 is also placed in the accommodation bin 21, the microphone 2 is completely accommodated in the accommodation bin 21. When the microphone 2 is accommodated in the accommodation bin 21 and the microphone head protrudes from the opening 212, the microphone 2 is partially accommodated in the accommodation bin 21.

[0145] When the microphone 2 is taken out, the user's hand is placed in the microphone placing opening 5 to push the microphone 2 upward. When the microphone 2 moves to a certain extent and the microphone head is exposed, the user can hold the head of the microphone 2 to pull the microphone 2 out of the accommodation bin 21.

[0146] Specifically, the acoustic device further comprises a baffle 213 connected to the sound box body 1, and the baffle 213 covers part of the accommodation bin 21 to form the opening 212 and the microphone placing opening 5.

[0147] In this embodiment, the baffle 213 can confine the microphone 2 within the storage compartment 21, preventing the microphone 2 from detaching from the storage compartment 21 in the non-opening area 212 due to vibrations of the acoustic equipment. The baffle 213 covers part of the storage compartment 21, which not only saves costs, but also provides a space for the user's hand in the microphone opening 5. The user's hand can push the microphone 2 along the direction close to the opening 212 in this space, making it convenient for the user to pick up and take the microphone 2.

[0148] Specifically, please refer to Figure 19. The baffle 213 is provided with a connecting port 216, which is connected to both the opening 212 and the wheat release port 5.

[0149] Specifically, the width of the connecting port 216 is smaller than the width of the wheat release port 5.

[0150] The width of the connecting port 216 in this invention is greater than the width of a user's finger. When the microphone 2 needs to be removed, the user drags the microphone 2 upwards with their hand, and their finger passes through the connecting port 216 until the microphone 2 is lifted. Therefore, by setting the connecting port 216, the microphone 2 can be picked up and removed with one hand or with one finger, which greatly improves the convenience of use compared to the vertical two-handed picking method in the prior art.

[0151] Specifically, please refer to Figure 20. The acoustic device also includes a notch 34, which connects to the microphone outlet 5. At this time, there is more independent space for the user's hand, making it convenient for the user to push the microphone 2.

[0152] Specifically, the microphone 2 is provided with a handle 215. When the microphone 2 is confined in the storage compartment 21, the handle 215 is open to the outside. When the user takes the microphone 2, the user's finger can be inserted into the handle 215 to move the microphone 2 upward. Compared with the user's finger directly pushing the microphone 2 upward, the pushing effect is significantly more stable, avoiding the problem of damage caused by the microphone 2 suddenly slipping during the pushing process. The handle 215 of the present invention can be a groove or a protrusion. The present invention does not limit this, but when it is a protrusion, the size of the storage compartment 21 should be slightly larger than the size of the microphone 2 to accommodate the protrusion.

[0153] In another embodiment:

[0154] Specifically, please refer to Figure 22. The storage compartment 21 also includes a microphone outlet 5. The extension line 611 of the opening 212 in the channel direction of the storage compartment 21 intersects with the center line 511 of the microphone outlet 5. The opening 212 and the microphone outlet 5 are connected and are respectively located on two sides of the speaker body 1.

[0155] Specifically, the acoustic device also includes a limiting groove 214. The limiting groove 214 and the opening 212 are respectively located at both ends of the microphone opening 5. When the microphone 2 is placed in the storage compartment 21, one end of the microphone 2 is limited to the limiting groove 214.

[0156] It should be noted that the limiting groove 214 of the embodiment is consistent in size with the end of the microphone 2 away from the microphone head, and when the microphone 2 is placed in the storage compartment 21, the end of the microphone 2 away from the microphone head will be limited in the limiting groove 214. This design effectively prevents the microphone 2 from sliding or shaking in the storage compartment 21, ensuring the stability and safety of the microphone 2 when it is stored. When taking out the microphone 2, the user's hand is placed in the microphone opening 5 to push the microphone 2 upward, and when the microphone 2 moves to a certain extent, the user can hold the microphone 2 head and pull the microphone 2 out of the storage compartment 21.

[0157] Of course, it should be particularly pointed out that in order to further enhance the stability of the microphone 2 when stored in the storage compartment 21, the first embodiment and the second embodiment can be combined to make the acoustic device have both the limiting groove 214 and the baffle 213, and the present application does not limit this.

[0158] Specifically, the acoustic device further comprises a gap 34, and the gap 34 is connected to the microphone opening 5, at this time, there are more independent spaces for the user's hand to push the microphone 2.

[0159] Specifically, the microphone 2 is provided with a hand buckle 215, and when the microphone 2 is limited in the storage compartment 21, the hand buckle 215 is connected to the outside. When the user takes out the microphone 2, the user's fingers can be inserted into the hand buckle 215 to drive the microphone 2 upward, which is more stable than directly pushing the microphone 2 upward with the user's fingers, avoiding the problem of damage caused by the microphone 2 suddenly falling during the pushing process. The hand buckle 215 of the present application can be a groove or a protrusion, and the present application does not limit it, but when it is a protrusion, the size of the storage compartment 21 is slightly larger than that of the microphone 2 to accommodate the protrusion.

[0160] In another embodiment:

[0161] Specifically, it further comprises a first magnetic member 15 and a second magnetic member 3, the first magnetic member 15 is connected to the storage compartment 21, and the second magnetic member 3 is connected to the microphone 2. When the microphone 2 is limited in the storage compartment 21, the first magnetic member 15 and the second magnetic member 3 are attracted to each other.

[0162] It should be noted that the first magnetic attraction member 15 and the second magnetic attraction member 3 of the embodiment are opposite in magnetism (not shown in the figure), the second magnetic attraction member 3 is connected to the microphone 2, and the first magnetic attraction member 15 is connected to the storage bin 21. When the microphone 2 is stored in the storage bin 21, the first magnetic attraction member 15 and the second magnetic attraction member 3 correspond to each other, the first magnetic attraction member 15 and the second magnetic attraction member 3 are attracted to each other, and the microphone 2 is stably fixed in the storage bin 21, effectively preventing the microphone 2 from shaking and falling during movement or transportation of the acoustic device. Of course, it should be noted that the first magnetic attraction member 15 of the present application can be arranged at the middle part of the microphone 2, or at the end part of the microphone 2, and the present application does not limit this. In actual application, the first magnetic attraction member 15 can also be arranged at multiple positions of the microphone 2 to ensure that the microphone 2 is stably fixed in the storage bin 21, and the present application does not limit this.

[0163] Specifically, referring to FIG. 23, the acoustic device further comprises a gap 34 which is communicated with the storage bin 21. The gap 34 of the present application provides a taking space, and the user's hand can hold the microphone 2 of the storage bin 21 through the gap 34, so as to make the microphone 2 separate from the storage bin 21.

[0164] Specifically, the microphone 2 is provided with a hand buckle 215, and the hand buckle 215 is communicated with the outside when the microphone 2 is limited in the storage bin 21. When taking, the user's hand first enters the storage bin 21 through the gap 34 and inserts the hand buckle 215, and then drives the microphone 2 to move in the direction of the opening 212 until the microphone 2 completely separates from the storage bin 21. Compared with directly driving the microphone 2 to move by the user's fingers, the taking effect is obviously more stable, and the problem of damage caused by sudden sliding of the microphone 2 during taking is avoided.

[0165] In another embodiment,

[0166] Specifically, the storage bin 21 is provided with a power supply contact, and the microphone 2 is provided with a charging sheet 33. When the microphone 2 is limited in the storage bin 21, the charging sheet 33 is electrically connected to the power supply contact. The acoustic device provides a built-in charging function for the microphone 2, and the user does not need to prepare an additional charger or charging cord for the microphone 2, which greatly simplifies the use process and greatly enhances the practicability.

[0167] Embodiment 5

[0168] In the embodiment, the microphone 2 can be accommodated in the microphone independent accommodation type sound box, avoiding the problem of microphone 2 loss caused by separate storage of the microphone 2. The microphone independent accommodation type sound box is provided with a sound box body 1, a display screen 25 and an accommodation bin 21. The display screen 25 and the accommodation bin 21 are separately arranged on different surfaces of the sound box body 1 and are relatively independent. When the microphone independent accommodation type sound box is working, the display screen 25 is opened, and the accommodation bin 21 can be completely accommodated into the sound box body 1 at this time. The accommodation space 50 is matched with the accommodation bin 21, so that when the accommodation bin 21 is completely accommodated into the sound box body 1, the charging assembly of the accommodation bin 21 will not be exposed to the external environment, avoiding the short circuit problem of the charging assembly caused by long-term exposure to the external environment.

[0169] Referring to FIGS. 24-25, the accommodation type sound box provided by the application comprises a sound box body 1, a display screen 25 movably connected to a first surface of the sound box body 1, an accommodation space 50 and an accommodation bin 21 for accommodating a microphone 2 arranged on a second surface of the sound box body 1. The accommodation space 50 is matched with the accommodation bin 21. The accommodation bin 21 is provided with a charging assembly for charging the microphone 2. The accommodation bin 21 can move towards the accommodation space 50.

[0170] It should be noted that the movable connection of the application can be a rotating shaft rotation, a sliding rail sliding, a magnetic separation and the like, which is not limited in the application. The display screen 25 and the accommodation bin 21 are separately arranged on different surfaces of the sound box body 1 and are relatively independent. When the microphone independent accommodation type sound box is working, the display screen 25 is opened. The accommodation bin 21 is subjected to an external force towards the sound box body 1 or the sound box body 1 is subjected to an external force towards the accommodation bin 21. The accommodation bin 21 can be accommodated into the sound box body 1. The accommodation space 50 is matched with the accommodation bin 21, so that when the accommodation bin 21 is accommodated into the sound box body 1, the charging assembly of the accommodation bin 21 will not be exposed to the external environment, avoiding the short circuit problem of the charging assembly caused by long-term exposure to the external environment.

[0171] Specifically, the accommodation bin 21 comprises a plurality of microphone collecting grooves 6 matched with the microphone 2. The charging assembly comprises a power supply contact 60. The microphone 2 is provided with a charging contact 8. When the microphone 2 is located in the microphone collecting groove 6, the power supply contact 60 is electrically connected to the charging contact 8 of the microphone 2. The microphone 2 of the application is matched with the microphone collecting groove 6. The microphone 2 is not easy to shake when placed in the microphone collecting groove 6, avoiding the problem that the microphone 2 is easy to shake and impact in the microphone collecting groove 6 caused by the microphone collecting groove 6 being too large. Of course, it should be noted that in order to further enhance the stability of the connection between the microphone 2 and the microphone collecting groove 6, a limiting belt can be additionally arranged to bind the microphone 2 to the microphone collecting groove 6. In order to avoid the impact on the microphone 2, a buffer pad can be arranged on the handle cover of the microphone 2.

[0172] Specifically, the microphone independent storage type sound box further comprises a locking mechanism, when the storage bin 21 is in the storage state, the locking mechanism is used for locking the storage bin 21 and the sound box body 1.

[0173] Specifically, please refer to the first locking piece 7 and the second locking piece 9 shown in FIG. 26 and FIG. 27, the first locking piece 7 is connected to the sound box body 1, the second locking piece 9 is connected to the storage bin 21, one of the first locking piece 7 and the second locking piece 9 is provided with a mounting groove, and the other is provided with a protrusion, and the protrusion is connected to the mounting groove.

[0174] Specifically, please refer to the first magnetic attraction piece 15 and the second magnetic attraction piece 3 shown in FIG. 28 and FIG. 29, the first magnetic attraction piece 15 is connected to the sound box body 1, the second magnetic attraction piece 3 is connected to the storage bin 21, and the first magnetic attraction piece 15 and the second magnetic attraction piece 3 attract each other.

[0175] Specifically, the storage bin 21 further comprises a baffle 213, a positioning groove 14 matched with the baffle 213 on the sound box body 1, the baffle 213 is connected to the second magnetic attraction piece 3, the positioning groove 14 is connected to the first magnetic attraction piece 15, and the first magnetic attraction piece 15 and the second magnetic attraction piece 3 attract each other.

[0176] It should be noted that in order to lock the storage bin 21 in the storage state on the sound box body 1, the locking mechanism is provided in the application, which can be a buckle mechanism, the protrusion is connected to the mounting groove when locking is required, and the protrusion is separated from the mounting groove when the locking is cancelled. The locking mechanism can be a magnetic attraction mechanism, which realizes the locking of the storage bin 21 and the sound box body 1 by using the principle of magnetic attraction between opposite poles. Of course, it should be noted that in actual application, the locking of the sound box body 1 and the storage bin 21 can also be realized by other ways, which is not limited in the application.

[0177] Specifically, the microphone independent storage type sound box further comprises two shoulder strap hanging points, the shoulder strap hanging points of the application are located on both sides of the length direction of the sound box body 1, and the direction in which the storage bin 21 enters and exits is parallel to the direction in which the two shoulder strap hanging points are connected, so that the storage bin 21 is easily opened to take the microphone 2 even during the moving process.

[0178] Specifically, the microphone independent storage type sound box further comprises a power supply assembly, the sound box body 1 is further provided with a power supply bin, the power supply assembly is limited in the power supply bin and is electrically connected to the display screen 25 and all power supply contacts 60. The power supply assembly of the application is a rechargeable power supply, the sound box body 1 is provided with a charging port, the power supply assembly is electrically connected to the display screen 25 and the power supply contacts 60, so that the display screen 25 and the power supply contacts 60 can be powered, and when the power supply assembly is insufficient, the external power supply connected to the charging port can charge the power supply assembly.

[0179] Specifically, the microphone independent storage type sound box further comprises a sealing piece and a roller assembly, the sealing piece is arranged between the storage bin 21 and the sound box body 1, and the roller assembly is connected to the bottom of the sound box body 1.

[0180] The sealing piece of the present application is a silica gel strip or a foam, which is arranged between the storage bin 21 and the sound box body 1 to ensure the airtightness of the storage bin 21 in the storage state, and the roller is arranged at the bottom of the sound box body 1, so that people can push the sound box body 1 more easily.

[0181] Specifically, the microphone independent storage type sound box further comprises a handle, a guide rail and a sliding rail, the handle is connected to the storage bin 21, the guide rail is arranged in the storage space 50 and connected to the sound box body 1, and the sliding rail is connected to the storage bin 21 and slidingly connected to the guide rail, for example, in some embodiments, the sliding rail is arranged at the bottom of the storage bin 21, and the guide rail is arranged below the sliding rail. The handle of the present application is arranged on the storage bin 21, so that when people need to open the storage bin 21, they can pull the handle outward, thereby avoiding the problem that the storage bin 21 is not easy to pull out due to being completely stored in the storage space 50, and the sliding of the storage bin 21 in the storage space 50 is realized through the guide rail and the sliding rail, so that the frictional resistance is greatly reduced.

[0182] Finally, it should be noted that the above content is only used to illustrate the technical solutions of the present application, and is not a limitation on the protection scope of the present application, and the simple modification or equivalent replacement of the technical solutions of the present application by the ordinary skilled in the art does not deviate from the essence and scope of the technical solutions of the present application.

Claims

1. A microphone stowable speaker, characterized by: Including a sound box body and a microphone, an outer wall of the sound box body is provided with a storage bin communicating with the outside; The storage bin includes a microphone placing opening and a microphone collecting groove, and the microphone collecting groove communicates with the microphone placing opening; The center line of the microphone placing opening in the opening direction intersects with the extension line of the microphone collecting groove in the groove direction, so that the microphone sinks into the microphone collecting groove after being placed in the microphone placing opening; A first magnetic attraction element is arranged in the storage bin, and a second magnetic attraction element is arranged on the microphone, and the microphone is arranged in the storage bin through the attraction between the first magnetic attraction element and the second magnetic attraction element.

2. The microphone-stowable speaker enclosure of claim 1, wherein: The microphone placing opening includes a first opening, and a second opening and a third opening are respectively arranged on both sides of the first opening, and the first opening, the second opening and the third opening all communicate with the microphone collecting groove.

3. The microphone stowable speaker enclosure of claim 2, wherein: The microphone collecting groove includes a middle groove, the middle groove extends to both ends of the sound box body to form a microphone clamping mechanism, and the middle groove communicates with the microphone placing opening; the microphone clamping mechanism includes a first microphone clamping groove and a second microphone clamping groove, the groove bottoms of the first microphone clamping groove and the second microphone clamping groove are both arc-shaped, the middle groove extends to the lower end surface of the sound box body to form the first microphone clamping groove, and the middle groove extends to the upper end surface of the sound box body to form the second microphone clamping groove.

4. The microphone-stowable speaker enclosure of claim 3, wherein: The outer wall of the sound box body is provided with a groove, the first opening is arranged in communication with the groove; a first microphone clamping groove and a second microphone clamping groove are arranged on the side wall of the groove and recessed in a direction away from the groove, and the middle groove is arranged in communication with the groove, the first microphone clamping groove and the second microphone clamping groove; the first microphone clamping groove and the second microphone clamping groove are used for accommodating the microphone; Further comprising a first limiting element with elasticity; the first limiting element is arranged on the inner wall of the first microphone clamping groove and the second microphone clamping groove and located at the middle groove; the first limiting element is used for abutting against the microphone in the first microphone clamping groove and the second microphone clamping groove to limit the position of the microphone.

5. The microphone stowable speaker enclosure of claim 4, wherein: The side of the first limiting element towards the first microphone clamping groove and the second microphone clamping groove is provided with a first inclined surface, and the first inclined surface is used for abutting against the microphone in the accommodating space; the side of the first limiting element towards the groove is provided with a second inclined surface.

6. The microphone-stowable speaker enclosure of claim 1, wherein: A charging assembly for charging the microphone is correspondingly arranged between the microphone and the sound box body; A cover is connected to the opening of the storage bin, and the cover is provided with a first flexible element towards the microphone; when the cover closes the storage bin, the first flexible element abuts against the microphone, and the charging assembly charges the microphone.

7. The microphone stowable speaker enclosure of claim 6, wherein: An abutting element is further arranged in the storage bin, and the microphone abuts against the top of the abutting element when the microphone is fixed in the storage bin.

8. The microphone storable sound box according to claim 7, characterized in that: The charging assembly includes a first charging element and a second charging element, the first charging element is arranged in the storage bin, and the first charging element penetrates the abutting element, and the second charging element is arranged on the bottom surface of the microphone; The microphone is fixed in the storage bin, and the second charging element and the first charging element are electrically connected to charge the microphone.

9. The microphone stowable speaker enclosure of claim 6, wherein: A rotating shaft is arranged on the cover, the rotating shaft penetrates the cover and is rotationally connected with the sound box body; The flip cover is provided with a buckle and a flip handle on the side away from the rotating shaft, and the side wall of the storage bin is provided with a buckle slot matched with the buckle.

10. The microphone-stowable speaker enclosure of claim 1, wherein: The box cover is movably connected to the loudspeaker body, the opening of the storage bin is communicated with the outside, the storage bin is arranged on the outer wall of the loudspeaker body, and the opening is arranged outside the overlapping area of the loudspeaker body after the box cover is closed, so that the microphone can be taken out from the storage bin when the box cover is opened or closed.

11. The microphone-stowable speaker enclosure of claim 10, wherein: The microphone is provided with a buckle hand part, and when the microphone is limited in the storage bin, the buckle hand part is communicated with the outside.

12. The microphone-stowable speaker enclosure of claim 1, wherein: The gap is also provided, which is communicated with the storage bin.

13. The microphone-stowable speaker enclosure of claim 1, wherein: The first surface of the loudspeaker body is movably connected with a display screen, the second surface of the loudspeaker body is provided with a storage space and a storage bin for accommodating a microphone, the storage space is matched with the storage bin, and the storage bin moves relative to the storage space.

14. The microphone storable sound box according to claim 13, characterized in that: The locking mechanism is also provided, which is used for locking the storage bin and the loudspeaker body when the storage bin is in the storage state.

Citation Information

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